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首页> 外文期刊>Journal of Biomechanics >Leg stiffness in unilateral transfemoral amputees across a range of running speeds
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Leg stiffness in unilateral transfemoral amputees across a range of running speeds

机译:在一系列运行速度下单方面经纪罚款中的腿僵硬度

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Carbon fiber running-specific prostheses have allowed lower extremity amputees to participate in running activity by providing spring-like properties in their affected limb. It has been established that as running speed increases, stiffness of the leg spring (leg stiffness; kieg) remains constant in non-amputees. Although a better understanding of keg regulation may be helpful for the development of spring-based prostheses, little is known about stiffness regulation in unilateral transfemoral amputees. The aim of this study was to investigate stiffness regulation at different running speeds in unilateral transfemoral amputees wearing a running-specific prosthesis. Nine unilateral transfemoral amputees performed running on an instrumented treadmill across a range of speeds (30, 40, 50, 60, and 70% of their maximum running speed). Using a spring-mass model, keg was calculated as the ratio of maximal vertical ground reaction force to maximum leg compression during the stance phase in both affected and unaffected limbs. We found a decrease in kieg from the slower speed to 70% speed for the affected limb, whereas no change was present in the unaffected limb. Specifically, there was a significant differences in the keg between 30% and 70%, 40% and 70%, and 50% and 70%, and the magnitude of the kieg difference between affected and unaffected limbs varied with variations in running speeds in unilateral TFAs with an RSP. These results suggest the kieg regulation strategy of unilateral transfemoral amputees is not the same in the affected and unaffected limbs across a range of running speeds. (C) 2018 Elsevier Ltd. All rights reserved.
机译:碳纤维的特异性假体使得下肢疗法通过在其受影响的肢体中提供弹簧状性质来参与运行活动。已经确定,随着运行速度的增加,腿部弹簧(腿刚度; kieg)的刚度保持恒定。虽然对小桶调节的更好理解可能有助于开发弹簧的假体,但对单侧破碎酵母的刚度调节很少。该研究的目的是在穿着跑步特异性假体的单侧发生粉末的不同运行速度下调查刚度调节。在一系列速度(30,40,50,60和70%的最大运行速度的速度范围内,在仪表钻头上运行九个单侧变粉。使用弹簧质量模型,将KEG计算为受影响和未受影响的四肢的立场期间最大垂直地反作用力与最大腿部压缩的比率。我们发现受影响的肢体的速度较慢的速度降低到70%的速度,而未受影响的肢体没有任何变化。具体而言,菌落的差异差异为30%至70%,40%和70%,50%和70%,受影响和未受影响的四肢之间的Kieg差异的大小随着单侧的运行速度的变化而变化TFAS与RSP。这些结果表明,在一系列运行速度范围内,单方面发生粉末的Kieg调节策略在受影响和不受影响的肢体中不尽相同。 (c)2018年elestvier有限公司保留所有权利。

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